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Trajectory of microparticles actuated with standing surface acoustic waves in microfluidic devices

机译:微流体器件中驻扎在静置表面声波的微粒的轨迹

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This article deals with the development of a two-dimensional dynamic model for predicting the trajectory of microparticles in an acoustic field, associated with standing surface acoustic wave, on a continuous flow microfluidic device. The model consists of two governing equations, each describing the motion of the microparticle. The model is solved using finite difference method; the solution provides the displacements of the microparticles, in the two directions, for the time duration of interest. The model is subsequently employed for parametric study. The parameters considered include the width of the microchannel, radius of microparticles, initial transverse displacement of the microparticle and volumetric flow rate. The primary application of this model article would be in the design process.
机译:本文涉及在连续流动微流体装置上预测与驻地声波相关联的声场中微粒的轨迹的二维动态模型的发展。该模型由两个控制方程组成,每个控制方程都描述微粒的运动。使用有限差分法解决了该模型;该解决方案在两个方向上提供微粒的位移,以便在感兴趣的时间内。随后使用该模型用于参数研究。所考虑的参数包括微通道的宽度,微粒半径,微粒的初始横向位移和体积流速。此模型文章的主要应用将在设计过程中。

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